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Lead Removal from Contaminated Shooting Range Soil using Acetic Acid Potassium Chloride Washing Solutions and Electrochemical Reduction

机译:醋酸氯化钾洗涤液和电化学还原法去除靶场污染土壤中的铅

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Background. Cleanup of soils contaminated with toxic metals is a difficult task due to the method inefficiency and the destructive nature of clean-up techniques on soil ecosystems. Objectives. This study was performed to improve the removal efficiency of an acetic acid washing solution for the removal of lead (Pb) from soil. Acetic acid was used in combination with different concentrations of potassium chloride. In order to maximize the removal of Pb from the leachate, different electrode combinations were applied to the washing solutions. Methods. Acetic acid/potassium chloride washing solutions and electrochemical reduction were applied to lead-contaminated soil obtained from an impact berm of a major military shooting range in Ibadan, southwestern Nigeria. The soil was subjected to 5% acetic acid/5% potassium chloride (KCL) and 5% acetic acid/10% KCL solutions in an ex-situ batch experiment. The leachate was electrochemically reduced using 12 volt direct current with a current of 7 amps and 2.5 amps, with aluminum (Al)-Al, iron (Fe)-Fe, Al-Fe and Fe-Al electrodes. Results. The 5% acetic acid/5% KCL proved more efficient for Pb removal in soil with values ranging from 74.9% to 86.9% for 3% soil pulp densities with one washing time of 6 hours. Removal efficiency of Pb from the contaminated soil significantly decreased as the soil pulp density increased. The Al-Al and Al-Fe bipolar electrode combinations showed better removal efficiency of Pb from the leachates with values of 93.7% and 95.6% for 7 amps and 94.5% and 97.3% for 2.5 amps, respectively. Conclusions. The combined 5% acetic acid and 5% potassium chloride washing solution enhances the removal efficiency of Pb in soil and poses less risk to the soil ecosystem and the environment in general. Competing Interests. The authors declare no competing financial interests.
机译:背景。由于方法效率低下以及清理技术对土壤生态系统的破坏性,清理有毒金属污染的土壤是一项艰巨的任务。目标。进行这项研究是为了提高乙酸洗涤液从土壤中去除铅(Pb)的去除效率。乙酸与不同浓度的氯化钾结合使用。为了最大程度地从渗滤液中去除Pb,将不同的电极组合应用于洗涤溶液。方法。将醋酸/氯化钾洗涤液和电化学还原法应用于从尼日利亚西南部伊巴丹的一个主要军事射击场的撞击护堤获得的铅污染土壤。在异位分批实验中,对土壤施以5%乙酸/ 5%氯化钾(KCL)和5%乙酸/ 10%KCL溶液。使用铝(Al)-Al,铁(Fe)-Fe,Al-Fe和Fe-Al电极,使用12伏直流电以7安培和2.5安培的电流对渗滤液进行电化学还原。结果。事实证明,对于3%的土壤纸浆密度,5%的乙酸/ 5%的KCL去除土壤中的Pb的效率更高,一次洗涤时间为6小时,范围从74.9%至86.9%。随着土壤纸浆密度的增加,从污染土壤中去除铅的效率显着下降。 Al-Al和Al-Fe双极电极组合从浸出液中去除Pb的效率更高,对于7安培分别为93.7%和95.6%,对于2.5安培分别为94.5%和97.3%。结论。 5%乙酸和5%氯化钾的混合洗涤溶液提高了Pb在土壤中的去除效率,对土壤生态系统和整个环境的风险较小。利益争夺。作者宣称没有任何竞争性的经济利益。

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